Eligibility: 10+2 Non-Medical
Duration: 4 years
Affiliated to: IKG Punjab Technical University, Kapurthala
Approved by : AICTE
Rayat Bahra Institute of Engineering & Nano-Technology, affiliated with IKG Punjab Technical University and approved by AICTE proudly offers a Bachelor of Technology in Civil Engineering. Our program is designed to provide students with advanced technical skills and practical experience, preparing them to excel in the ever-evolving field of civil engineering.
Semester | Batch Name | Category | Intake | Total Sem Fee |
---|---|---|---|---|
Per Semester | 2024-2028 | General | 30 | 45000 |
Eligibility: 10+2 Non-Medical
Duration: 4 years
Affiliated to: IKG Punjab Technical University, Kapurthala
Approved by : AICTE
Civil Engineering involves the design, construction, and maintenance of infrastructure projects such as buildings, roads, bridges, and water systems. The scope includes structural design, geotechnical analysis, transportation planning, and environmental engineering. Civil engineers work on creating and improving infrastructure to meet societal needs, ensure safety, and promote sustainability. Their expertise is crucial in both public and private sectors, contributing to urban development, disaster management, and environmental protection. This field offers diverse career opportunities across construction, consulting, and project management.
The first semester of the B.Tech in Civil Engineering program introduces students to the fundamental concepts necessary for a solid foundation in engineering. Courses include Engineering Mathematics I, which covers essential mathematical tools and techniques, and Engineering Physics and Chemistry, which provide a scientific understanding crucial for civil engineering applications. Introduction to Civil Engineering offers an overview of the field, while Basic Engineering Drawing and Engineering Mechanics lay the groundwork for technical drawing and the principles of mechanics. Communication Skills are emphasized to enhance students’ ability to articulate ideas effectively
In the second semester, students advance their mathematical skills with Engineering Mathematics II and delve into Fluid Mechanics I, which explores the behavior of fluids in various engineering contexts. Strength of Materials focuses on the properties and behavior of materials under stress, essential for structural analysis. Building Materials and Construction introduces key materials and methods used in construction, complemented by Surveying I, which teaches fundamental techniques for measuring and mapping land. Environmental Studies provides insights into environmental impact, while Computer-Aided Design introduces software tools used in design and drafting.
The third semester builds on previous knowledge with Engineering Mathematics III, expanding mathematical methods applied in engineering. Structural Analysis I explores techniques for analyzing structures, and Fluid Mechanics II continues the study of fluid dynamics. Geotechnical Engineering I introduces the study of soil and its impact on construction, while Transportation Engineering I covers the principles of designing and managing transportation systems. Surveying II continues from the previous semester with more advanced techniques, and Structural Analysis Laboratory provides practical experience in analyzing structural models.
In the fourth semester, students study Structural Analysis II, which advances their understanding of complex structural systems. Reinforced Concrete Structures covers the design and application of concrete in construction, while Geotechnical Engineering II builds on earlier soil studies. Transportation Engineering II continues with more advanced topics in transportation systems. Hydraulics and Water Resources Engineering focuses on water flow and management, Building Design and Drawing emphasizes detailed design techniques, and Construction Project Management introduces principles for managing construction projects effectively.
The fifth semester covers Design of Steel Structures, which focuses on the design and application of steel in construction. Environmental Engineering I addresses environmental issues and solutions, while Advanced Structural Analysis explores complex structural systems. Earthquake Engineering teaches principles for designing structures to withstand seismic activity. Construction Technology introduces modern techniques and innovations in construction, and Estimation and Costing covers the financial aspects of construction projects. Students also select one elective to tailor their education to their interests.
During the sixth semester, students study Environmental Engineering II, which continues to explore environmental issues and solutions. Irrigation Engineering covers the design and management of irrigation systems, and Highway Engineering focuses on the planning and design of road networks. Advanced Concrete Technology delves into the latest advancements in concrete materials and techniques, while Construction Safety and Quality addresses standards and practices for ensuring safety and quality in construction. Students also choose a second elective and undertake Industrial Training for practical experience.
The seventh semester includes Project Work I, where students apply their knowledge to real-world projects. Urban Planning and Management introduces concepts for planning and managing urban spaces, and Geosynthetics and Geotechnical Engineering covers the use of synthetic materials in soil and construction. Structural Dynamics explores the behavior of structures under dynamic loads, and students select a third elective. The semester concludes with a focus on professional practice, preparing students for their future careers.
In the final semester, students complete Project Work II, further developing their project management and engineering skills. Dissertation allows for in-depth research on a topic of interest, and Advanced Construction Techniques covers cutting-edge methods in construction. Students choose a final elective, and the semester includes an Internship to gain hands-on experience in the industry. This comprehensive final phase ensures that graduates are fully prepared for their careers in civil engineering.
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